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1.
迁移对害虫抗性演化的影响   总被引:3,自引:0,他引:3  
利用抗性群体遗传模型研究了迁移对害虫抗性演化的影响。模拟结果表明,迁入比例对害虫种群抗性演化的影响存在一定的阈值。若迁入个体全为敏感(SS)纯合子,而其比例又在阈值以下时,这种迁入对抗性演化无延缓作用;迁入比例在阈值以上时,随比例加大,对抗性延缓作用逐渐增强,加大到某一值时,抗性演化可完全被阻止;若迁入个体携有R基因,则迁入比例在阈值以下时,会促进迁入区害虫种群的抗性演化;在阈值以上时,可延缓或完全阻止害虫种群的抗性演化。处理区害虫种群原有个体的迁出,可加强SS个体迁入对害虫种群抗性演化的影响,而使携R基因的个体的迁入影响减弱。以小菜蛾Plutella xylostella为模型昆虫所作的试验结果表明,模型模拟与验证试验的结果具有较好的一致性,说明抗性模拟模型可用于害虫种群的抗性演化预测和分析。  相似文献   

2.
杀虫剂混用方法——抗性治理的一种策略   总被引:12,自引:2,他引:10  
李松岗  张宗炳 《昆虫学报》1990,33(3):280-286
本文根据种群遗传学的基本原理,采用计算机数值模拟的方法定量比较了合理混用、轮用、棋盘式使用等用药策略对害虫抗性增长的影响.结果表明,对半显性遗传,两性繁殖的害虫来说,在较有利的条件下合理混用与轮用效果基本一致,而优于棋盘式用药;在条件不利(抗性基因初始频率高,稀释作用小等)时,合理混用的方法明显优于其他两种方法.因此合理混用是一种有希望的抗性治理方法.  相似文献   

3.
镶嵌式防治对抗性演化影响的论证   总被引:5,自引:2,他引:3  
唐振华  张朝远 《昆虫学报》1993,36(2):185-189
为了评估镶嵌式防冶对抗性演化的影响,我们以淡色库蚊(Culex pipiens pallens)作为模型昆虫,用抗马拉硫磷(单因子)品系(RM)和抗氰戊菊酯(多因子)品系(RF)构成抗性个体频率均为0.1的一个“什成群体”(M品系),然后在F1代分成三个亚品系。Rmf亚品系用马拉硫磷和氰戊菊酯作镶嵌式模拟处理,并与单用马拉硫磷(Rm)和氰戊菊酯(Rf)逐代处理的亚品系作比较。处理10代后,Rm和Rmf对马拉硫磷的抗性分别是M晶系的266.4和6.1倍,而Rf和Rmf在处理5代后,对氰戊菊酯;山抗性均已达243.3倍。漠拟结果表明:(1)以杀虫饥理不同的杀虫剂进行镶嵌式防冶,在一定的条件下能延缓抗性的发展;(2)对单因子遗传,内马拉硫磷特别有效,而对多因子遗传的氰戊菊酯效果不佳。此外,还讨论了抗性治理的策略。  相似文献   

4.
吴兴富  宋春满 《昆虫知识》2008,45(1):95-100
室内模拟田间杀虫剂施药方式,研究3种杀虫剂连用及其顺序轮用对烟蚜Myzus persicae(Sulzer)抗药性发展和羧酸酯酶活力的影响。结果表明,氧化乐果、灭多威、高效氟氯氰菊酯连续施药9次后,其抗性分别增长73.3,8.9,10.4倍;氧化乐果→灭多威→高效氟氯氰菊酯顺序轮用3次(施药9次)后,氧化乐果抗性指数增长了47.3倍,灭多威抗性指数增长了6.7倍,高效氟氯氰菊酯抗性指数增长了5.0倍。羧酸酯酶活力检测结果表明,3种杀虫剂连用9次后,烟蚜种群的α-NACarE活力分别增长了20.0,24.0和15.6倍,酶活力在0.6(OD600nm/aphid/min)以上的个体比例分别增加了73.4%,87.6%和43.8%;而3种杀虫剂顺序轮用3次(施药9次)后,烟蚜种群的α-NACarE活力增长了10.2倍,酶活力在0.6以上的个体比例增加了4.8%。结果证实杀虫剂轮换施用能延缓烟蚜抗药性的发展和烟蚜种群α-NACarE活力及高活力个体频率的增加。  相似文献   

5.
溴虫腈是目前防治小菜蛾的主要杀虫剂之一,为评估其抗性风险,在室内采用浸叶法,用溴虫腈亚致死剂量对小菜蛾3龄幼虫进行抗性筛选,筛选18代时应用域性状分析法进行抗性风险评估及交互抗性测定。结果表明:小菜蛾饲养20代,用溴虫腈筛选18代,与起始种群相比,抗性增长48.2倍。域性状分析法估算得小菜蛾对溴虫腈的抗性现实遗传力为0.465,且前半段筛选的抗性遗传力(0.563)远大于后半段筛选的抗性遗传力(0.078)。在现实遗传力为室内估算值的一半,死亡率为80%-90%时,预计小菜蛾对溴虫腈抗性增加10倍,仅需要6.6-8.3代。交互抗性测定结果表明,小菜蛾对溴虫腈产生抗性后,对阿维菌素、虱螨脲、氯虫苯甲酰胺、多杀菌素和茚虫威无交互抗性,但对丁醚脲可能具有交互抗性。结果显示:小菜蛾具有对溴虫腈产生高水平抗性的风险,但可通过与没有交互抗性的杀虫剂的轮用来延缓抗性的发展。  相似文献   

6.
小菜蛾Plutella xylostella(L.)是为害十字花科蔬菜的一种重要的世界性害虫,由于其分布范围广、繁殖速度快、抗性水平高,已经成为最难防治的害虫之一。基于苏云金芽胞杆菌Bacillus thuringiensis(Bt)开发的杀虫剂在小菜蛾生物防治中发挥重要的作用,但小菜蛾作为在田间最早对Bt产生抗性的害虫,其抗性发展及抗性机理也引起了全世界的广泛关注。本文概述了小菜蛾的发生危害及其抗药性的研究动态、苏云金芽胞杆菌的起源、发展及应用,分析了小菜蛾对Bt杀虫毒素产生抗药性及其抗性机理,并从抗性发展风险、转基因油菜种植和进一步深入开展抗性机理的研究三个方面进行了展望,以期为优化小菜蛾抗药性的治理策略、提高生物农药和Bt作物的控害效能提供借鉴和参考。  相似文献   

7.
广东小菜蛾对苏芸金杆菌的抗性研究   总被引:22,自引:3,他引:19  
冯夏  陈焕瑜 《昆虫学报》1996,39(3):238-245
广东省深圳,东莞、惠阳及博罗等供香港(以下简称供港)菜区小菜蛾对有机化学农药的抗性与广州内销菜区相近或稍高,对Bt杀虫剂的抗性则是供港菜区明显高于广州内销菜区。几种酶抑制剂TPP、SVl及Pb对Bt制剂无明显增效作用,可见小菜蛾对Bt制剂的抗性与酯酶和多功能氧化酶(MFO)的关系不大。用Bt制剂Dipel(大宝)连代选育小菜蛾敏感品系,选育18代,小菜蛾的抗性较选育前提高35倍。该抗性品系小菜蛾对个别菌株Bt及巴丹、杀虫双、速灭杀丁、万灵、敌敌畏等无交互抗性,而对昆虫生长调节抑制剂有轻微交互抗性。相反,用巴丹和杀虫双选育出的小菜蛾抗性品系对npel仍表现敏感。抗性品系小菜蛾在无触毒条件下饲养,抗性会自然减退,但不同类杀虫剂的抗性减退速率不尽相同。  相似文献   

8.
【目的】本文全面评估了香蕉黄胸蓟马Thrips hawaiiensis田间种群对杀虫剂的抗性水平,旨在为更科学合理地防治该虫提供依据。【方法】室内采用叶管药膜法(TIBS),分别在2013、2015年监测了昌江、澄迈、临高、东方4个地区香蕉黄胸蓟马田间种群对10种杀虫剂的抗性水平。【结果】从2013—2015年,总体上海南香蕉黄胸蓟马田间种群对大多数杀虫剂的敏感性均有不同程度的下降,但仍处于敏感状态。其中,香蕉黄胸蓟马田间种群对传统药剂甲维盐、毒死蜱和高效氯氰菊酯,及新型杀虫剂乙基多杀菌素、溴氰虫酰胺和螺虫乙酯均保持较敏感状态(抗性倍数<5)。但监测的所有田间种群(昌江、澄迈、临高、东方)均对啶虫脒均已产生了中等水平抗性(抗性倍数分别为15.19、11.19、17.46、13.58倍);对阿维菌素均产生了低水平抗性(抗性倍数分别为9.06、8.95、13.35、6.57倍);另外,东方种群对多杀菌素、吡虫啉,以及临高种群对吡虫啉均产生了低水平抗性(抗性倍数分别为7.11、7.48、8.28倍)。【结论】因此,建议在香蕉同一生长季节应避免重复使用或限用啶虫脒和阿维菌素,应注意与其它药剂的混用、轮用,以延缓香蕉黄胸蓟马抗药性的发展。  相似文献   

9.
昆虫对有机磷杀虫剂的抗性   总被引:7,自引:0,他引:7  
有机磷杀虫剂在害虫的防治中多年来一直被作为一种有效的化学农药来使用。随着杀虫剂的大量使用,大部分害虫对这些杀虫剂产生了不同程度的抗性,导致杀虫剂剂量不断加大、防治效果降低,同时也造成了严重的环境污染。近年来,对昆虫有机磷杀虫剂抗性机制的研究发现,害虫对有机磷杀虫剂产生抗性的主要原因是由于其作用靶标物乙酰胆碱酯酶(AchE)对杀虫剂敏感性下降、AchE或普通酯酶活性上升等。本文就近年来国内外关于昆虫对有机磷杀虫剂抗性机制的研究进行综述,以期对害虫的抗性监测及抗性治理提供有用的参考。  相似文献   

10.
棉蚜(Aphis gossypu Glover)是我国北方棉区的主要害虫。自1953年开始使用有机磷杀虫剂对硫磷和1059等防治棉蚜以来,田间喷雾浓度和使用次数逐年增大,棉蚜产生的抗性。80年代使用高效拟除虫菊酯类杀虫剂溴氰菊酯和氰戊菊酯等,三年后棉蚜抗性增长了171倍,有些地区达3230倍。此文报道棉蚜的抗性机制的研究结果,证实了棉蚜抗性与杀虫剂穿透能力降低、多功能氧化酶、α-乙酸萘酯酶和α-乙酸萘酯羧酸酶的活力增加、乙酰胆碱酯酶对杀虫剂敏感性的降低有关。在这基础上进行增效剂SV_1对多种有机磷和拟除虫菊酯杀虫剂的增效试验,得出SV_1对防治抗性棉蚜有明显的增效作用,能延缓抗性的发展。并研究了杀虫剂抗性的防治策略及综合治理措施,为防治棉蚜抗性和延缓抗性发展取得了较好的效果。  相似文献   

11.
南京地区小菜蛾的抗药性检测及初步分析   总被引:11,自引:0,他引:11  
吴敏  韩召军  孟建业  朱斌 《昆虫学报》2005,48(4):633-636
利用浸叶法对南京郊区小菜蛾Plutella xylostella的抗药性进行了监测,发现其对拟除虫菊酯类药剂的抗性较高,而对氟虫腈、辛硫磷、毒死蜱、多杀菌素和虫酰肼依然处于敏感阶段。利用抗性小菜蛾测试发现,氧化胡椒基丁醚(增效醚,简称PBO)对拟除虫菊酯具有显著的增效作用。室内敏感性恢复实验表明,在不接触药剂的条件下,小菜蛾对拟除虫菊酯的抗性迅速下降,繁殖10代以后,抗性维持在低抗水平。因此, 小菜蛾的抗药性治理,应充分利用不同药剂的轮换使用,避免单一使用某一品种,以延缓抗性的发展,同时可以利用PBO增强拟除虫菊酯的防治效果,保证这类药剂在小菜蛾防治中的作用。  相似文献   

12.
小菜蛾对几种常用药剂的敏感性测定   总被引:1,自引:1,他引:0  
采用叶片浸溃法,在2001年10月和2002年10月分别测定了福州上街蔬菜基地的小菜蛾,对10种杀虫剂的敏感性。结果表明,上街菜区小菜蛾对灭多威、杀虫双、辛硫磷、毒死蜱、杀灭菊酯和功夫菊酯等农药极不敏感,已不能有效控制小菜蛾的危害。而小菜蛾对氟啶脲、阿维菌素、氟虫腈和虫螨腈比较敏感。通过两次毒力测定比较(2002年10月的LC50;2001年10月的LC50),结果表明,大多数杀虫剂敏感性变化较小。但小菜蛾对阿维菌素敏感性明显下降,毒力倍数达6.65倍,对氟虫腈毒力倍数相差1.48倍。此外,2002年10月小菜蛾对功夫菊酯的LC50为2001年10月的2.02倍。用浸叶法和浸溃法测定多杀菌素、氟虫腈与虫螨腈推荐浓度对小菜蛾幼虫的毒杀作用。结果表明3种药剂浸叶法处理效果均较理想。  相似文献   

13.
小菜蛾对杀螟丹抗性遗传的研究   总被引:17,自引:3,他引:14  
利用室内选育的抗杀螟丹小菜蛾Plutella xylostella (L.)品系和敏感品系研究了该品系的抗性遗传形式,结果表明,小菜蛾对杀螟丹的抗性形式为常染色体多基因遗传,并呈不完全显性。该品系对6种常用杀虫剂的抗性谱测定结果表明,对杀虫双有较严重的正交互抗性;对敌敌畏、杀扑磷有低度交互抗性;对溴氰菊酯、灭多威和叶蝉散等药剂无交互抗性。还发现该品系对杀螟丹的抗性与乙酰胆碱酯酶和羧酸酯酶活性无关。  相似文献   

14.
Intensive use of pesticides is common and increasing despite a growing and historically well documented awareness of the costs and hazards. The benefits from pesticides of increased yields from sufficient pest control may be outweighed by developed resistance in pests and killing of beneficial natural enemies. Other negative effects are human health problems and lower prices because of consumers' desire to buy organic products. Few studies have examined these trade-offs in the field. Here, we demonstrate that Nicaraguan cabbage (Brassica spp.) farmers may suffer economically by using insecticides as they get more damage by the main pest diamondback moth, Plutella xylostella (L.) (Lepidoptera: Plutellidae), at the same time as they spend economic resources on insecticides. Replicated similarly sized cabbage fields cultivated in a standardized manner were either treated with insecticides according common practice or not treated with insecticides over two seasons. Fields treated with insecticides suffered, compared with nontreated fields, equal or, at least in some periods of the seasons, higher diamondback moth pest attacks. These fields also had increased leaf damage on the harvested cabbage heads. Weight and size of the heads were not affected. The farmers received the same price on the local market irrespective of insecticide use. Rates of parasitized diamondback moth were consistently lower in the treated fields. Negative effects of using insecticides against diamondback moth were found for the density of parasitoids and generalist predatory wasps, and tended to affect spiders negatively. The observed increased leaf damages in insecticide-treated fields may be a combined consequence of insecticide resistance in the pest, and of lower predation and parasitization rates from naturally occurring predators that are suppressed by the insecticide applications. The results indicate biological control as a viable and economic alternative pest management strategy, something that may be particularly relevant for the production of cash crops in tropical countries where insecticide use is heavy and possibly increasing.  相似文献   

15.
艾氏剂环氧化酶及细胞色素P-450对小菜蛾抗药性发展的影响   总被引:13,自引:1,他引:12  
陈言群  杨帆 《昆虫学报》1994,37(3):280-285
本文对室内长期饲养的小菜蛾(Plutella xylostella L.)敏感品系和田间采集的抗性种群体内的艾氏剂环氧化酶及细胞色素P-450进行了比较研究。结果证明,艾氏剂环氧化酶在感性和抗性小菜蛾间存在着量及质的差异。 抗性种群的艾氏剂环氧化酶的Vmax和Km值分别为感性品系的5.4倍和6.5倍。抗性种群的细胞色素P-450的含量是感性品系的1.1-1.3倍。艾氏剂环氧化酶在量上及质上的差异及细胞色素P-450含量的提高是导致小菜蛾抗药性发生与发展的重要机制之一。而且质的差异较之量的差异可能起着更为重要的作用,  相似文献   

16.
Diamide insecticides such as chlorantraniliprole and flubendiamide are a new class of insecticide that selectively target insect ryanodine receptors (RyR), a distinct class of homo-tetrameric calcium release channels which play a pivotal role in calcium homeostasis in numerous cell types. Resistance to these insecticides has recently been reported in the diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae), a global lepidopteran pest of cruciferous crops. In the present study a region of the gene encoding the proposed diamide binding site of the RyR from P. xylostella collected from the Philippines and Thailand and found to be over 200-fold resistant to both chlorantraniliprole and flubendiamide compared to susceptible strains, were amplified by RT-PCR and sequenced. Comparison of the sequence with those from several susceptible reference strains revealed non-synonymous mutations in each of the resistant strains that in both cases lead to a glycine to glutamic acid substitution (G4946E) in the protein. The independent evolution of the same amino acid substitution within a highly conserved region of the proposed diamide binding site in two geographically separated resistant strains of P. xylostella strongly suggests a causal association with diamide resistance. Furthermore we designed a pyrosequencing-based diagnostic assay for resistance monitoring purposes that can be used to detect the G4946E mutation in field-collected samples of diamondback moth. The implications of the reported findings for resistance management strategies are discussed.  相似文献   

17.
棉蚜抗杀灭菊酯品系的某些生物学特性   总被引:12,自引:1,他引:11  
吴孔明  刘芹轩 《昆虫学报》1994,37(2):137-144
1908-1990年抗性监测表明,河南棉区棉蚜Aphis gossypii Glover对杀灭菊酯、氧化乐果和 久效磷的抗性水平明显增长,特别是对杀灭菊酯的抗性已达较高水平。使用杀灭菊酯对敏感棉蚜连续选择8次,棉蚜对杀灭菊酯抗性上升1392.67倍(浸溃法测定),并表现对久效磷和氧化乐果有3-4倍的正交互抗性。对4个不同抗性品系棉蚜的实验种群生命表分析表明,杀灭菊酯抗性棉蚜的适合度并不降低,抗性棉 蚜的繁殖力不表现降低趋势。利用棉田常用8种有机磷、菊酯类和脒类农药的单剂及混剂测定了对高抗棉蚜的毒力水平,DDVP表现对高抗杀灭菊酯棉蚜有较强毒力;脒类和菊酯类农药混配有显著的增效作用, 但与DDVP混用则有拮抗作用。  相似文献   

18.
Abstract:  Resistance of the codling moth Cydia pomonella (L.) (Lep., Tortricidae) to the organophosphorus compound (OP) azinphosmethyl was observed in apple orchards in Israel. The level of resistance varied with the pest control strategy. Compared with a sensitive laboratory population, the resistance level was highest in insects from the preventative pest control strategy, intermediate in integrated pest management (IPM) orchards, and relatively low in the organic orchards. The level of azinphosmethyl resistance in larvae (but not in adults) exposed for 17 generations in the laboratory to a pesticide-free diet was reduced by 50%. Codling moth larvae resistant to azinphosmethyl were also resistant to various insect growth regulators (IGRs). The IGRs include three chitin synthesis inhibitors (diflubenzuron, novaluron and teflubenzuron), two juvenile hormone mimics (pyriproxyfen and fenoxycarb) and one ecdysone agonist (methoxyfenozide). Codling moth resistant to azinphosmethyl was tolerant to methoxyfenozide and novaluron without previous history of application in apple orchards, indicating the possibility of cross-resistance. According to this study, managing resistance programs in apple orchards should be based on IPM principles with minimum use of conventional neuroactive pesticides.  相似文献   

19.
Insecticidal crystal proteins from Bacillus thuringiensis in sprays and transgenic crops are extremely useful for environmentally sound pest management, but their long-term efficacy is threatened by evolution of resistance by target pests. The diamondback moth (Plutella xylostella) is the first insect to evolve resistance to B. thuringiensis in open-field populations. The only known mechanism of resistance to B. thuringiensis in the diamondback moth is reduced binding of toxin to midgut binding sites. In the present work we analyzed competitive binding of B. thuringiensis toxins Cry1Aa, Cry1Ab, Cry1Ac, and Cry1F to brush border membrane vesicles from larval midguts in a susceptible strain and in resistant strains from the Philippines, Hawaii, and Pennsylvania. Based on the results, we propose a model for binding of B. thuringiensis crystal proteins in susceptible larvae with two binding sites for Cry1Aa, one of which is shared with Cry1Ab, Cry1Ac, and Cry1F. Our results show that the common binding site is altered in each of the three resistant strains. In the strain from the Philippines, the alteration reduced binding of Cry1Ab but did not affect binding of the other crystal proteins. In the resistant strains from Hawaii and Pennsylvania, the alteration affected binding of Cry1Aa, Cry1Ab, Cry1Ac, and Cry1F. Previously reported evidence that a single mutation can confer resistance to Cry1Ab, Cry1Ac, and Cry1F corresponds to expectations based on the binding model. However, the following two other observations do not: the mutation in the Philippines strain affected binding of only Cry1Ab, and one mutation was sufficient for resistance to Cry1Aa. The imperfect correspondence between the model and observations suggests that reduced binding is not the only mechanism of resistance in the diamondback moth and that some, but not all, patterns of resistance and cross-resistance can be predicted correctly from the results of competitive binding analyses of susceptible strains.  相似文献   

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